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5G56
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BU of 5g56 by Molmil
THE TETRA-MODULAR CELLULOSOMAL ARABINOXYLANASE CtXyl5A STRUCTURE AS REVEALED BY X-RAY CRYSTALLOGRAPHY
分子名称: (4S)-2-METHYL-2,4-PENTANEDIOL, CALCIUM ION, CARBOHYDRATE BINDING FAMILY 6
著者Bras, J.L.A, Gilbert, H.J, Ferreira, L.M.A, Fontes, C.M.G.A, Najmudin, S.
登録日2016-05-21
公開日2016-06-29
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (2.64 Å)
主引用文献The Mechanism by which Arabinoxylanases Can Recognise Highly Decorated Xylans.
J.Biol.Chem., 291, 2016
4D3L
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BU of 4d3l by Molmil
SeMet structure of a novel carbohydrate binding module from glycoside hydrolase family 9 (Cel9A) from Ruminococcus flavefaciens FD-1 in the orthorhombic form
分子名称: (3S)-3-HYDROXYHEPTANEDIOIC ACID, 1,2-ETHANEDIOL, CALCIUM ION, ...
著者Venditto, I, Goyal, A, Thompson, A, Ferreira, L.M.A, Fontes, C.M.G.A, Najmudin, S.
登録日2014-10-22
公開日2016-01-20
最終更新日2016-07-13
実験手法X-RAY DIFFRACTION (2 Å)
主引用文献Complexity of the Ruminococcus Flavefaciens Cellulosome Reflects an Expansion in Glycan Recognition.
Proc.Natl.Acad.Sci.USA, 113, 2016
5AOT
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BU of 5aot by Molmil
Very high resolution structure of a novel carbohydrate binding module from Ruminococcus flavefaciens FD-1 endoglucanase Cel5A
分子名称: CACODYLATE ION, Carbohydrate binding module, GLYCEROL
著者Pires, A.J, Ribeiro, T, Thompson, A, Venditto, I, Fernandes, V.O, Bule, P, Santos, H, Alves, V.D, Pires, V, Ferreira, L.M.A, Fontes, C.M.G.A, Najmudin, S.
登録日2015-09-11
公開日2016-06-22
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (1.02 Å)
主引用文献Complexity of the Ruminococcus flavefaciens cellulosome reflects an expansion in glycan recognition.
Proc. Natl. Acad. Sci. U.S.A., 113, 2016
5AOS
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BU of 5aos by Molmil
Structure of a novel carbohydrate binding module from Ruminococcus flavefaciens FD-1 endoglucanase Cel5A solved at the As edge
分子名称: CACODYLATE ION, Carbohydrate binding module, GLYCEROL
著者Pires, A.J, Ribeiro, T, Thompson, A, Venditto, I, Fernandes, V.O, Bule, P, Santos, H, Alves, V.D, Pires, V, Ferreira, L.M.A, Fontes, C.M.G.A, Najmudin, S.
登録日2015-09-11
公開日2016-06-29
最終更新日2024-05-08
実験手法X-RAY DIFFRACTION (1.29 Å)
主引用文献Complexity of the Ruminococcus flavefaciens cellulosome reflects an expansion in glycan recognition.
Proc. Natl. Acad. Sci. U.S.A., 113, 2016
5AF1
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BU of 5af1 by Molmil
Crystal structure of Candida albicans Mep2
分子名称: MEP2
著者Rutherford, J.C, Chembath, A, van den Berg, B.
登録日2015-01-14
公開日2016-01-27
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (1.639 Å)
主引用文献Structural Basis for Mep2 Ammonium Transceptor Activation by Phosphorylation.
Nat.Commun., 7, 2016
5AID
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BU of 5aid by Molmil
Crystal structure of the Mep2 mutant delta442 from Candida albicans
分子名称: MEP2
著者van den Berg, B, Chembath, A, Rutherford, J.
登録日2015-02-12
公開日2016-03-02
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (3.4 Å)
主引用文献Structural Basis for Mep2 Ammonium Transceptor Activation by Phosphorylation.
Nat.Commun., 7, 2016
5AH3
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BU of 5ah3 by Molmil
Crystal structure of the Mep2 mutant R452D,S453D from Candida albicans
分子名称: DECYL-BETA-D-MALTOPYRANOSIDE, MEP2
著者van den Berg, B, Chembath, A, Rutherford, J.
登録日2015-02-04
公開日2016-03-02
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (2.4 Å)
主引用文献Structural Basis for Mep2 Ammonium Transceptor Activation by Phosphorylation.
Nat.Commun., 7, 2016
5AEZ
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BU of 5aez by Molmil
Crystal structure of Candida albicans Mep2
分子名称: MEP2, nonyl beta-D-glucopyranoside
著者Rutherford, J.C, Chembath, A, van den Berg, B.
登録日2015-01-12
公開日2016-01-20
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (1.47 Å)
主引用文献Structural Basis for Mep2 Ammonium Transceptor Activation by Phosphorylation.
Nat.Commun., 7, 2016
5AEX
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BU of 5aex by Molmil
Crystal structure of Saccharomyces cerevisiae Mep2
分子名称: AMMONIUM TRANSPORTER MEP2, PHOSPHATE ION
著者Rutherford, J.C, Chembath, A, van den Berg, B.
登録日2015-01-12
公開日2016-01-20
最終更新日2024-01-10
実験手法X-RAY DIFFRACTION (3.2 Å)
主引用文献Structural Basis for Mep2 Ammonium Transceptor Activation by Phosphorylation.
Nat.Commun., 7, 2016
4AZZ
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BU of 4azz by Molmil
Carbohydrate binding module CBM66 from Bacillus subtilis
分子名称: LEVANASE
著者Gloster, T.M, Flint, J.E, Gilbert, H.J, Davies, G.J.
登録日2012-06-27
公開日2012-07-25
最終更新日2024-05-08
実験手法X-RAY DIFFRACTION (1.7 Å)
主引用文献How Nature Can Exploit Nonspecific Catalytic and Carbohydrate Binding Modules to Create Enzymatic Specificity.
Proc.Natl.Acad.Sci.USA, 109, 2012
8RDV
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BU of 8rdv by Molmil
Cryo-EM structure of P. urativorans 70S ribosome in complex with hibernation factor Balon, mRNA and P-site tRNA (structure 2).
分子名称: 16S rRNA, 23S rRNA, 5S rRNA, ...
著者Helena-Bueno, K, Rybak, M.Y, Gagnon, M.G, Hill, C.H, Melnikov, S.V.
登録日2023-12-08
公開日2024-02-21
最終更新日2024-03-13
実験手法ELECTRON MICROSCOPY (2.6 Å)
主引用文献A new family of bacterial ribosome hibernation factors.
Nature, 626, 2024
6ENE
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BU of 6ene by Molmil
OmpF orthologue from Enterobacter cloacae (OmpE35)
分子名称: (HYDROXYETHYLOXY)TRI(ETHYLOXY)OCTANE, Outer membrane protein (Porin), SULFATE ION, ...
著者van den Berg, B, Abellon-Ruiz, J, Basle, A.
登録日2017-10-04
公開日2018-10-31
最終更新日2024-01-17
実験手法X-RAY DIFFRACTION (2.3 Å)
主引用文献Getting Drugs into Gram-Negative Bacteria: Rational Rules for Permeation through General Porins.
Acs Infect Dis., 4, 2018
5T3R
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BU of 5t3r by Molmil
Crystal structure of BT1762-1763
分子名称: MAGNESIUM ION, SODIUM ION, SusC homolog, ...
著者van den Berg, B.
登録日2016-08-26
公開日2016-12-14
最終更新日2019-10-16
実験手法X-RAY DIFFRACTION (3.1 Å)
主引用文献Structural basis for nutrient acquisition by dominant members of the human gut microbiota.
Nature, 541, 2017
5T4Y
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BU of 5t4y by Molmil
Crystal structure of BT1762-1763
分子名称: MAGNESIUM ION, SusC homolog, SusD homolog
著者van den Berg, B.
登録日2016-08-30
公開日2016-12-14
最終更新日2024-01-17
実験手法X-RAY DIFFRACTION (3.1 Å)
主引用文献Structural basis for nutrient acquisition by dominant members of the human gut microbiota.
Nature, 541, 2017
8AA1
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BU of 8aa1 by Molmil
Core SusCD transporter units from the levan utilisome with levan fructo-oligosaccharides DP 8-12
分子名称: MAGNESIUM ION, SusC homolog, SusD homolog, ...
著者White, J.B.R, Silale, A, Ranson, N.A, van den Berg, B.
登録日2022-06-29
公開日2023-06-07
最終更新日2023-06-21
実験手法ELECTRON MICROSCOPY (2.9 Å)
主引用文献Outer membrane utilisomes mediate glycan uptake in gut Bacteroidetes.
Nature, 618, 2023
8AA0
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BU of 8aa0 by Molmil
Levan utilisation machinery (utilisome) with levan fructo-oligosaccharides DP 8-12
分子名称: DUF4960 domain-containing protein, Glycoside hydrolase family 32, MAGNESIUM ION, ...
著者White, J.B.R, Silale, A, Ranson, N.A, van den Berg, B.
登録日2022-06-29
公開日2023-06-07
最終更新日2023-06-21
実験手法ELECTRON MICROSCOPY (3.2 Å)
主引用文献Outer membrane utilisomes mediate glycan uptake in gut Bacteroidetes.
Nature, 618, 2023
8A9Y
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BU of 8a9y by Molmil
Substrate-free levan utilisation machinery (utilisome)
分子名称: DUF4960 domain-containing protein, Glycoside hydrolase family 32, MAGNESIUM ION, ...
著者White, J.B.R, Silale, A, Ranson, N.A, van den Berg, B.
登録日2022-06-29
公開日2023-06-07
最終更新日2023-06-21
実験手法ELECTRON MICROSCOPY (3.5 Å)
主引用文献Outer membrane utilisomes mediate glycan uptake in gut Bacteroidetes.
Nature, 618, 2023
8AA4
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BU of 8aa4 by Molmil
SusC components of the dextran utilisation system (utilisome)
分子名称: SusC homolog
著者White, J.B.R, Silale, A, Ranson, N.A, van den Berg, B.
登録日2022-06-29
公開日2023-06-07
最終更新日2023-06-21
実験手法ELECTRON MICROSCOPY (3.1 Å)
主引用文献Outer membrane utilisomes mediate glycan uptake in gut Bacteroidetes.
Nature, 618, 2023
8AA2
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BU of 8aa2 by Molmil
Inactive levan utilisation machinery (utilisome) in the presence of levan fructo-oligosaccharides DP 15-25
分子名称: DUF4960 domain-containing protein, Glycoside hydrolase family 32, MAGNESIUM ION, ...
著者White, J.B.R, Silale, A, Ranson, N.A, van den Berg, B.
登録日2022-06-29
公開日2023-06-07
最終更新日2023-06-21
実験手法ELECTRON MICROSCOPY (3.1 Å)
主引用文献Outer membrane utilisomes mediate glycan uptake in gut Bacteroidetes.
Nature, 618, 2023
8AA3
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BU of 8aa3 by Molmil
Core SusCD transporter units from the inactive levan utilisome in the presence of levan fructo-oligosaccharides DP 15-25
分子名称: MAGNESIUM ION, SusC homolog, SusD homolog, ...
著者White, J.B.R, Silale, A, Ranson, N.A, van den Berg, B.
登録日2022-06-29
公開日2023-06-07
最終更新日2023-06-21
実験手法ELECTRON MICROSCOPY (2.7 Å)
主引用文献Outer membrane utilisomes mediate glycan uptake in gut Bacteroidetes.
Nature, 618, 2023
6YTC
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BU of 6ytc by Molmil
Solution NMR structure of the isolated NTE domain of BT1762-63 levan transporter
分子名称: TonB-dependent receptor
著者Rath, P, Mazur, A, Hiller, S.
登録日2020-04-24
公開日2020-07-08
最終更新日2023-06-14
実験手法SOLUTION NMR
主引用文献Insights into SusCD-mediated glycan import by a prominent gut symbiont.
Nat Commun, 12, 2021
6EUI
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BU of 6eui by Molmil
The GH43, Beta 1,3 Galactosidase, BT3683 with galactose
分子名称: Beta-glucanase, CALCIUM ION, beta-D-galactopyranose
著者Cartmell, A, Gilbert, H.J.
登録日2017-10-30
公開日2018-10-17
最終更新日2024-05-01
実験手法X-RAY DIFFRACTION (1.76 Å)
主引用文献A surface endogalactanase in Bacteroides thetaiotaomicron confers keystone status for arabinogalactan degradation.
Nat Microbiol, 3, 2018
6EUJ
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BU of 6euj by Molmil
The GH43, Beta 1,3 Galactosidase, BT0265
分子名称: Beta-glucanase
著者Cartmell, A, Gilbert, H.J.
登録日2017-10-30
公開日2018-10-17
最終更新日2019-10-16
実験手法X-RAY DIFFRACTION (2.75 Å)
主引用文献A surface endogalactanase in Bacteroides thetaiotaomicron confers keystone status for arabinogalactan degradation.
Nat Microbiol, 3, 2018
6EUF
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BU of 6euf by Molmil
The GH43, Beta 1,3 Galactosidase, BT0265
分子名称: Beta-glucanase, alpha-L-arabinofuranose-(1-3)-[alpha-L-arabinofuranose-(1-4)][beta-D-glucopyranuronic acid-(1-6)]beta-D-galactopyranose-(1-6)-beta-D-galactopyranose, alpha-L-rhamnopyranose-(1-4)-beta-D-glucopyranuronic acid-(1-6)-[alpha-L-arabinofuranose-(1-3)][alpha-L-arabinofuranose-(1-4)]beta-D-galactopyranose-(1-6)-beta-D-galactopyranose
著者Cartmell, A, Gilbert, H.J.
登録日2017-10-30
公開日2018-10-17
最終更新日2024-05-08
実験手法X-RAY DIFFRACTION (2.2 Å)
主引用文献A surface endogalactanase in Bacteroides thetaiotaomicron confers keystone status for arabinogalactan degradation.
Nat Microbiol, 3, 2018
6EUH
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BU of 6euh by Molmil
The GH43, Beta 1,3 Galactosidase, BT3683 with galactodeoxynojirimycin
分子名称: (2R,3S,4R,5S)-2-(hydroxymethyl)piperidine-3,4,5-triol, Beta-glucanase, CALCIUM ION
著者Cartmell, A, Gilbert, H.J.
登録日2017-10-30
公開日2018-10-17
最終更新日2024-05-08
実験手法X-RAY DIFFRACTION (2 Å)
主引用文献A surface endogalactanase in Bacteroides thetaiotaomicron confers keystone status for arabinogalactan degradation.
Nat Microbiol, 3, 2018

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